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在卵母细胞中,减数分裂I和II之间,一个运动间期包膜围绕着染色体。

An interkinetic envelope surrounds chromosomes between meiosis I and II in oocytes.

作者信息

Mossadeq Layla El, Bellutti Laura, Borgne Rémi Le, Canman Julie C, Pintard Lionel, Verbavatz Jean-Marc, Askjaer Peter, Dumont Julien

机构信息

Université Paris Cité, CNRS, Institut Jacques Monod, F-75013 Paris, France.

Columbia University; Department of Pathology and Cell Biology, New York, NY 10032, USA.

出版信息

bioRxiv. 2024 Oct 21:2024.10.19.619195. doi: 10.1101/2024.10.19.619195.

Abstract

At the end of cell division, the nuclear envelope reassembles around the decondensing chromosomes. Female meiosis culminates in two consecutive cell divisions of the oocyte, meiosis I and II, which are separated by a brief transition phase known as interkinesis. Due to the absence of chromosome decondensation and the suppression of genome replication during interkinesis, it has been widely assumed that the nuclear envelope does not reassemble between meiosis I and II. By analyzing interkinesis in oocytes, we instead show that an atypical structure made of two lipid bilayers, which we termed the interkinetic envelope, surrounds the surface of the segregating chromosomes. The interkinetic envelope shares common features with the nuclear envelope but also exhibits specific characteristics that distinguish it, including its lack of continuity with the endoplasmic reticulum, unique protein composition, assembly mechanism, and function in chromosome segregation. These distinct attributes collectively define the interkinetic envelope as a unique and specialized structure that has been previously overlooked.

摘要

在细胞分裂末期,核膜围绕着解聚的染色体重新组装。雌性减数分裂在卵母细胞的两次连续细胞分裂中达到高潮,即减数分裂I和II,这两次分裂由一个短暂的过渡阶段(称为中间期)分隔开。由于在中间期不存在染色体解聚且基因组复制受到抑制,人们普遍认为在减数分裂I和II之间核膜不会重新组装。通过分析卵母细胞中的中间期,我们反而发现一种由两个脂质双层构成的非典型结构,我们将其称为中间期核膜,它围绕着分离染色体的表面。中间期核膜与核膜有共同特征,但也表现出使其有别于核膜的特定特性,包括它与内质网缺乏连续性、独特的蛋白质组成、组装机制以及在染色体分离中的功能。这些独特的属性共同将中间期核膜定义为一种此前被忽视的独特且专门的结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/039a/11526925/04ee6086a368/nihpp-2024.10.19.619195v1-f0001.jpg

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